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利用二维间接半导体的直接动量匹配能带排列范德华异质结构的第一性原理高通量逆设计

First-Principles High-Throughput Inverse Design of Direct Momentum-Matching Band Alignment van der Waals Heterostructures Utilizing Two-Dimensional Indirect Semiconductors.

作者信息

Zhang Qian, Xiong Yuanfan, Gao Yunzhi, Chen Jiajia, Hu Wei, Yang Jinlong

机构信息

Hefei National Research Center for Physical Sciences at the Microscale, and Hefei National Laboratory, University of Science and Technology of China, Hefei, Anhui 230026, People's Republic of China.

Key Laboratory of Precision and Intelligent Chemistry, and Department of Chemical Physics, University of Science and Technology of China, Hefei, Anhui 230026, People's Republic of China.

出版信息

Nano Lett. 2024 Mar 27;24(12):3710-3718. doi: 10.1021/acs.nanolett.4c00042. Epub 2024 Mar 14.

Abstract

Two-dimensional (2D) van der Waals (vdW) heterostructures have attracted widespread attention in photocatalysis. Herein, we employ a novel strategy utilizing first-principles high-throughput inverse design of 2D Z-scheme heterojunctions for photocatalysis. This approach is anchored in high-throughput screening conditions, which are fundamentally based on the characteristics of carrier mechanisms influenced significantly by Z-scheme heterojunctions. A pivotal element of our screening process is the integration of the indirect-to-direct bandgap transition with momentum-matching band alignment in -space, guiding us to combine two 2D indirect bandgap monolayers into direct Z-scheme heterojunctions characterized by pronounced interlayer excitons. Various stacking modes introduce extra and distinct degrees of freedom that can be useful for tuning the properties of heterostructures, encompassing factors such as components, stacking patterns, and sequences. We demonstrate that various stacking modes can facilitate the indirect-to-direct bandgap transition and the emergence of interlayer excitons. These findings provide exciting opportunities for designing Z-scheme heterojunctions in photocatalysis.

摘要

二维(2D)范德华(vdW)异质结构在光催化领域引起了广泛关注。在此,我们采用了一种新颖的策略,利用二维Z型异质结的第一性原理高通量逆设计来进行光催化。这种方法基于高通量筛选条件,而这些条件从根本上是基于受Z型异质结显著影响的载流子机制的特性。我们筛选过程的一个关键要素是在动量空间中将间接带隙到直接带隙的跃迁与动量匹配的能带排列相结合,引导我们将两个二维间接带隙单层组合成具有明显层间激子的直接Z型异质结。各种堆叠模式引入了额外且独特的自由度,这对于调节异质结构的性质可能是有用的,这些性质包括诸如组分、堆叠模式和序列等因素。我们证明,各种堆叠模式可以促进间接带隙到直接带隙的跃迁以及层间激子的出现。这些发现为光催化中Z型异质结的设计提供了令人兴奋的机会。

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